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  4. Hydrogen bubbles and the growth morphology of ramified zinc by electrodeposition
 
research article

Hydrogen bubbles and the growth morphology of ramified zinc by electrodeposition

Hsu, Pei-Cheng
•
Seol, Seung-Kwon
•
Lo, Tsung-Nan
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2008
Journal of the Electrochemical Society

Real-time X-ray microscopy was used to study the influence of hydrogen-bubble formation on the morphology of ramified zinc electrodeposit. The experimental results show that when intense hydrogen bubbling occurs at high potential, the morphology of the ramified zinc deposit changes from dense-branching to fern-shaped dendrite. The fern-shaped dendrite results in part from the constricted growth due to hydrogen bubbles but also from the highly concentrated electric field. The fern-shaped dendrite morphology was observed during the early stages of electroplating for both the potentiostatic and galvanostatic modes; however, the deposit plated in the galvanostatic mode densified via lateral growth during the later plating stages. This indicates that potentiostatic plating for which the hydrogen-bubble formation steadily occurs throughout the electrodeposition process is better than galvanostatic plating for fabricating fern-shaped deposits, which are ideal electrodes for Zn-air batteries due to the relatively large specific area. (C) 2008 The Electrochemical Society.

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Type
research article
DOI
10.1149/1.2894189
Web of Science ID

WOS:000254779700041

Author(s)
Hsu, Pei-Cheng
Seol, Seung-Kwon
Lo, Tsung-Nan
Liu, Chi-Jen
Wang, Chang-Liang
Lin, Chao-Sung
Hwu, Y.
Chen, C. H.
Chang, Liu-Wen
Je, J. H.
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Date Issued

2008

Published in
Journal of the Electrochemical Society
Volume

155

Start page

D400

End page

D407

Subjects

Electrochemical Deposition

•

Radiology

•

Electroconvection

•

Microradiology

•

Electrolytes

•

Convection

•

Evolution

•

Diffusion

•

Battery

•

Layer

•

CIBM-PC

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPRX  
CIBM  
Available on Infoscience
November 30, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/61474
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